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11.
目的研究秦岭东部地区树轮对气候因子的响应,为该区域森林资源管理及抚育更新提供数据,并为气候重建提供参考。  相似文献   
12.
三百山盆地的粗面岩主要出现在盆地东部仰天湖破火山口构造中,粗面岩锆石SHRIMP测年的年龄为141.56±0.96 Ma,应归属于早白垩世.盆地粗面岩具有钾含量高,全碱含量高,稀土元素配分曲线图表现为右倾的轻稀土富集型,Eu负异常不明显或表现为正异常的特征,表明三百山盆地的粗面岩属橄榄玄粗岩系列,具有高压型粗面岩的特征,标志着一个加厚的陆壳存在;岩浆物质来源于由上地壳物质俯冲到深部与地幔的混合而形成的再循环富集地幔,岩石形成的构造环境为“同碰撞”环境,代表挤压至拉张过渡构造环境.  相似文献   
13.
An ophiolite belt is exposed to the northern edge of Altun Tagh Mountain. Geochronological researches were made on gabbro and basalt. Sm-Nd isochron age of gabbro is (829 ± 60) Ma, while the age of gabbro mixed basalt is (949 ± 62) Ma. The dating of Sm-Nd isochron proves that ophiolite formed in (829 ± 60) Ma, which implies that the northern half of Tarim (or north Tarim Block) had been separated by an ocean from the southern half of Tarim and Qaidarn (or south Tarim Block) until (829 ± 60) Ma. The south Tarim Block could accrete to the north Tarim Block at the beginning of Sinian, thereby forming the north Altun Tagh suture. The Sinian system would be the first cover on the amalgamated Tarim craton.  相似文献   
14.
In the past century, it has long been debated in the archeological, historical, geographical, and many other related communities where the capital of the Luolan and Shanshan states was in the Lop Nor region. This paper presents three AMS radiocarbon ages from a newly-discovered ancient city at about 6.3 km to the northwest of the Xiaohe Graveyard, and fifteen new radiocarbon ages from the Loulan (LA), LE, Qieerqiduke, Milan, and Tuyin sites in Lop Nor. The new investigation shows that the age of newly-disco...  相似文献   
15.
冀北凤山地区侵位于前寒武纪岩石组合中的晚古生代的闪长岩-花岗质岩石,具有富Na,高Sr,低Y和重稀土元素等地球化学特征,Sr/Y在37.15~151.22之间变化,绝大多数样品均显示正Eu异常(一个样品例外),Eu·在0.92~1.53之间变化.LA-ICP-MS锆石U-Pb同位素测年和锆石Hf同位素分析表明闪长岩(JB6024)和二长花岗岩(样品JB6037-1)分别形成于315±2.8Ma和306.6±6Ma,即该区晚古生代存在两个岩浆作用幕.地球化学、全岩Sr-Nd同位素和锆石Hf同位素研究揭示凤山晚古生代闪长岩是EMI型富集岩石圈地幔部分熔融形成的岩浆与古老下地壳部分熔融形成的长英质岩浆混合作用结果,而花岗质岩石则是闪长质岩浆发生分离结晶作用的残余岩浆同化上部地壳岩石形成的.  相似文献   
16.
Diagenetic-metallogenic ages of pyritic cherts formed by the syn-sedimentation of hydrothermal vent and ages of the Jinchang Rock Formation in the Mojiang large nickel-gold deposit in the Ailaoshan gold metallogenic belt have been discussed on the basis of chronology of isotopic geochemistry. Nickel-gold-bearing pyritic cherts in the mining were formed by syn-sedimentation of hydrothermal vent in the Late Devonian, i.e. age by Sm-Nd isochronal method (t) = (358±8.6) (2σ) Ma and age by Rb-Sr isochronal method (t) = (354.7±0.72) (2σ) Ma. On the other hand, deep-water cherts from the Jinchang Rock Formation of the Upper Devonian in the area were initiated at the same time; that is, age by Sm-Nd isochronal method (t) = (359±21) (2σ) Ma and age by Rb-Sr isochronal method (t) = (358.02±0.30) (2σ) Ma.  相似文献   
17.
Granitoid gravels are discovered from alluvial fan conglomerates, the base of Jurassic Fenghuangtai Formation (J2 2), in the north margin of Dabie block and the south part of the Hefei Basin. These granitoid gravels make up 5%–10% of all gravels by volume percent. For the four components, K-feldspar, biotite, amphibole and whole rock divided from two selected granitoid gravel samples, their Rb-Sr isotopes are measured, which gives two formation ages of granitoids: (428±20) Ma and (430±54) Ma, and means that the Early Paleozoic granitoid intrusive rocks once existed in the Dabie Mountain provenances of Jurassic. The granitoids occur in the tectonic setting of post-collision uplift according to lithogeochemical discriminant analysis.  相似文献   
18.
由于缺乏合适的测年对象,华北地区中上元古界的年龄值主要是从沉积岩及脉岩中获得。该文据近来从辽北中元古界凡河群中识别出的一套同期喷发玄武岩,获得其Sin-Nd等时线年龄为1199±39Mr。FrO(全)-Al2O3-MgO,Ti/100-ZI-Y·3,TiO2-K2O-P2O5,TiO2-Y/Nb和TiO2-Zr图解指示了其大陆内部的裂谷构造环境。87Sr/86Sr=0.7030,=-9.5~-11,及无Eu负异常的轻稀土富集型配分模式表明岩浆源于上地幔及太古界地壳的重熔。综合分析华北板块内中晚元古代沉积层序及火山作用,推测中晚元古代时凡河地区是位于华北板块内部近北北东向裂陷槽北部末端部位的裂谷盆地,该裂陷槽由南向北渐次开裂呈楔形。  相似文献   
19.
根据《楼兰汉文简纸文书集成》中马伯乐、张凤、孔好古等的原释文,补考了4枝朔简和月朔简的年代、8枝纪年简的历日问题,认为土垠汉简26号黄文弼“疑为阳朔元年(公元前24年)”还有待商榷.  相似文献   
20.
Conclusions The gabbro xenoliths are inferred to form at (224 ± 524) Ma by means of Sm-Nd dating, which reflected the intrusive age or crystallization age of gabbric melts. This event indicates that the region transformed from stable platform stage into Mesozoic intensive tectonomagmatic activity stage. The dynamics originated from the upwelling of asthenosphere and lithospheric thinning. Additionally, according to εNd(T) = + 8.8 ± 0.6 of the gabbro xenoliths, within εNd variation of the MORB at 224 Ma, we know that the gabbro xenoliths are the outcrops of partial melting of the asthenosphere.  相似文献   
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